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Spectroscopid Analysuts 호 Prot, Zuhncky deoded io analyse a whaleystaline solid left behind by a student one aftomoon. By using mass spectrometry, be igured out that the molecular weight or the axilpound wins 70 밂mol. Prot Zuhncky also n and obtained the folkowing IR and 1H-NMR spectra. Based on this nformation, determine the structure of this unknown by determining the moleculsr formula first them determining the straciure by using the spec- tra below Info on the H-NMR: The peaks at -2.0 and 25 ppm are triplets The peaks at-3.5 and-3.8 ppm are singlets


please help me with this. I am not good at reading the IR charts.

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Answer #1

Structure:

{\color{Blue} \mathbf{HO-CH_2-CH_2-C\equiv C-H}}

\mathbf{Fw=79\frac{g}{mol}}

H-RMN Analize:

At -OH (singlet, integrate 1H+)

First -CH2- look to left -O- and rigth -CH2-, so: first -CH2(triplet, integrate 2H+)

Second -CH2- look to left -CH2- and rigth -C\equiv-, so: second -CH2(triplet, integrate 2H+)

At -\equivCH- (singlet, integrate 1H+)

IR Analize:

At 3300cm-1 show -OH bond stretch.

At 3000cm-1 show -\equivCH- bond stretch.

At 2800cm-1 show -CH2- bond stretch.

At 2300cm-1(aprox) show -C\equivC- bond stretch.


answered by: ANURANJAN SARSAM
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Answer #2

Structure:

{\color{Blue} \mathbf{HO-CH_2-CH_2-C\equiv C-H}}

\mathbf{Fw=79\frac{g}{mol}}

H-RMN Analize:

At -OH (singlet, integrate 1H+)

First -CH2- look to left -O- and rigth -CH2-, so: first -CH2- (triplet, integrate 2H+)

Second -CH2- look to left -CH2- and rigth -C\equiv-, so: second -CH2- (triplet, integrate 2H+)

At -\equivCH- (singlet, integrate 1H+)

IR Analize:

At 3300cm-1 show -OH bond stretch.

At 3000cm-1 show -\equivCH- bond stretch.

At 2800cm-1 show -CH2- bond stretch.

At 2300cm-1(aprox) show -C\equivC- bond stretch.

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